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Computational and experimental research on infrared trace by human being contact

机译:人体接触红外痕迹的计算与实验研究

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摘要

The indoor detection of the human body's thermal trace plays an important role in the fields of infrared detecting, scouting, infrared camouflage, and infrared rescuing and tracking. Currently, quantitative description and analysis for this technology are lacking due to the absence of human infrared radiation analysis. To solve this problem, we study the heating and cooling process by observing body contact and removal on an object, respectively. Through finite-element simulation and carefully designed experiments, an analytical model of the infrared trace of body contact is developed based on infrared physics and heat transfer theory. Using this model, the impact of body temperature on material thermal parameters is investigated. The sensitivity of material thermal parameters, the thermal distribution, and the changes of the thermograph's contrast are then found and analyzed. Excellent matching results achieved between the simulation and the experiments demonstrate the strong impact of temperature on material thermal parameters. Conclusively, the new model, simulation, and experimental results are beneficial to the future development and implementation of infrared trace technology.
机译:室内对人体热痕迹的检测在红外检测,侦察,红外伪装以及红外救援和跟踪领域中发挥着重要作用。当前,由于缺少人类红外辐射分析,因此缺乏对该技术的定量描述和分析。为了解决这个问题,我们分别通过观察物体与物体的接触和移除来研究加热和冷却过程。通过有限元模拟和精心设计的实验,基于红外物理和传热理论,建立了人体接触红外轨迹的解析模型。使用该模型,研究了体温对材料热参数的影响。然后找到并分析了材料热参数的敏感性,热分布以及热像仪对比度的变化。在仿真和实验之间获得的出色匹配结果证明了温度对材料热参数的强烈影响。最终,新的模型,仿真和实验结果将有利于红外跟踪技术的未来发展和实施。

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